基于多代理系统的混合微电网能源管理多目标算法

Ilham Tyass, Abdelouahed Bellat, A. Raihani, Khalifa Mansouri
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引用次数: 0

摘要

在充满活力的可再生能源领域,微电网系统成为促进当地可持续能源生产的一条大有可为的途径。然而,有效管理能源资源是释放其全部潜力的关键。本研究的任务是为微电网能源管理创建一个多目标优化算法。该算法的核心是对可再生能源的无缝整合和高效的存储协调。该算法利用多代理系统的优势,分配和利用能源资源。通过将可再生能源、存储机制和可变负载相结合,该算法提高了能源效率,并确保了稳定的电力供应。该算法在各种微电网场景下的实际模拟和验证中表现出色,为未来的可持续能源利用提供了先见之明,从而凸显了这一变革性解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective algorithm for hybrid microgrid energy management based on multi-agent system
In the dynamic landscape of renewable energies, microgrid systems emerge as a promising avenue for fostering sustainable local energy generation. However, the effective management of energy resources holds the key to unlocking their full potential. This study assumes the task of creating a multi-objective optimization algorithm for microgrid energy management. At its core, the algorithm places a premium on seamlessly integrating renewable energy sources and orchestrating efficient storage coordination. Leveraging the prowess of a multi-agent system, it allocates and utilizes energy resources. Through the combination of renewable sources, storage mechanisms, and variable loads, the algorithm promotes energy efficiency and ensures a steady power supply. This transformative solution is underscored by the algorithm's remarkable performance in practical simulations and validations across diverse microgrid scenarios, offering a prevue into the future of sustainable energy utilization.
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